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Michael Peitz

Showing results (1-10 of 58) with videos related to

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STAR Protocols|October 28, 2020
Protocol for the Standardized Generation of Forward Programmed Cryopreservable Excitatory and Inhibitory Forebrain NeuronsMichael Peitz, Tamara Krutenko, Oliver Brüstle
Journal of Neuroscience Methods|March 16, 2022
A defined human-specific platform for modeling neuronal network stimulation in vitro and in silicoJianbin Wen, Michael Peitz, Oliver Brüstle
International Journal of Molecular Sciences|May 11, 2024
Revealing Genetic Dynamics: scRNA-seq Unravels Modifications in Human PDL Cells across In Vivo and In Vitro EnvironmentsAli T Abdallah, Michael Peitz, Anna Konermann
Methods in Molecular Medicine|December 19, 2007
Stem cell engineering using transducible Cre recombinaseLars Nolden, Frank Edenhofer, Michael Peitz, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 21, 2002
Ability of the hydrophobic FGF and basic TAT peptides to promote cellular uptake of recombinant Cre recombinase: a tool for efficient genetic engineering of mammalian genomesMichael Peitz, Kurt Pfannkuche, Klaus Rajewsky, et al.
Stem Cell Research|May 1, 2025
Generation of a homozygous DNMT3A knock-out hiPSC line for modeling of cardiovascular diseases associated with clonal hematopoiesis of indeterminate potentialChristos Triantafyllou, Michael Peitz, Bernd K Fleischmann, et al.
Stem Cell Research|April 13, 2025
Generation of a genome-edited EMILIN1 (c.1606C>T) hiPSC line to investigate aortic aneurysm formation in vitroYanhui Zhang, Michael Peitz, Bernd K Fleischmann, et al.
Stem Cell Research|February 28, 2026
Generation of a homozygous TET2 knock-out hiPSC line for modeling of cardiovascular diseases associated with clonal hematopoiesis of indeterminate potential (CHIP)Christos Triantafyllou, Michael Peitz, Bernd K Fleischmann, et al.
Stem Cells (Dayton, Ohio)|September 9, 2006
Stage-specific conditional mutagenesis in mouse embryonic stem cell-derived neural cells and postmitotic neurons by direct delivery of biologically active Cre recombinaseSimone Haupt, Frank Edenhofer, Michael Peitz, et al.
Stem Cell Research|April 1, 2014
Cell-permeant recombinant Nanog protein promotes pluripotency by inhibiting endodermal specificationMichael Peitz, Bernhard Münst, Rajkumar P Thummer, et al.
Pageof 6

Showing results (1-10 of 58) with videos related to

Sort By:
Pageof 6
STAR Protocols|October 28, 2020
Protocol for the Standardized Generation of Forward Programmed Cryopreservable Excitatory and Inhibitory Forebrain NeuronsMichael Peitz, Tamara Krutenko, Oliver Brüstle
Journal of Neuroscience Methods|March 16, 2022
A defined human-specific platform for modeling neuronal network stimulation in vitro and in silicoJianbin Wen, Michael Peitz, Oliver Brüstle
International Journal of Molecular Sciences|May 11, 2024
Revealing Genetic Dynamics: scRNA-seq Unravels Modifications in Human PDL Cells across In Vivo and In Vitro EnvironmentsAli T Abdallah, Michael Peitz, Anna Konermann
Methods in Molecular Medicine|December 19, 2007
Stem cell engineering using transducible Cre recombinaseLars Nolden, Frank Edenhofer, Michael Peitz, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 21, 2002
Ability of the hydrophobic FGF and basic TAT peptides to promote cellular uptake of recombinant Cre recombinase: a tool for efficient genetic engineering of mammalian genomesMichael Peitz, Kurt Pfannkuche, Klaus Rajewsky, et al.
Stem Cell Research|May 1, 2025
Generation of a homozygous DNMT3A knock-out hiPSC line for modeling of cardiovascular diseases associated with clonal hematopoiesis of indeterminate potentialChristos Triantafyllou, Michael Peitz, Bernd K Fleischmann, et al.
Stem Cell Research|April 13, 2025
Generation of a genome-edited EMILIN1 (c.1606C>T) hiPSC line to investigate aortic aneurysm formation in vitroYanhui Zhang, Michael Peitz, Bernd K Fleischmann, et al.
Stem Cell Research|February 28, 2026
Generation of a homozygous TET2 knock-out hiPSC line for modeling of cardiovascular diseases associated with clonal hematopoiesis of indeterminate potential (CHIP)Christos Triantafyllou, Michael Peitz, Bernd K Fleischmann, et al.
Stem Cells (Dayton, Ohio)|September 9, 2006
Stage-specific conditional mutagenesis in mouse embryonic stem cell-derived neural cells and postmitotic neurons by direct delivery of biologically active Cre recombinaseSimone Haupt, Frank Edenhofer, Michael Peitz, et al.
Stem Cell Research|April 1, 2014
Cell-permeant recombinant Nanog protein promotes pluripotency by inhibiting endodermal specificationMichael Peitz, Bernhard Münst, Rajkumar P Thummer, et al.
Pageof 6